On the homogenization of metal matrix composites using strain gradient plasticity
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Computational Mechanics
Link
http://link.springer.com/content/pdf/10.1007/s10409-014-0028-7.pdf
Reference51 articles.
1. McDanels, D.: Analysis of stress-strain, fracture, ductility behavior of aluminum matrix composites containing discontinuous silicon carbide reinforcement. Metallurgical Transactions A (Physical Metallurgy and Materials Science) 16A, 1105–1115 (1985)
2. Bao, G., Hutchinson, J.W., McMeeking, R.M.: Particle reinforcement of ductile matrices against plastic flow and creep. Acta Metal. et Mater. 39, 1871–1882 (1991)
3. Legarth, B.N.: Effects of geometrical anisotropy on failure in a plastically anisotropic metal. Engineering Fracture Mechanics 72, 2792–2807 (2005)
4. Legarth, B.N., Kuroda, M.: Particle debonding using different yield criteria. European Journal of Mechanics—A/Solids 23, 737–751 (2004)
5. Tvergaard, V.: Analysis of tensile properties for a whisker-reinforced metal-matrix. omposite. Acta Metallurgica 38, 185–194 (1990)
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